论文标题
通过扭曲抗铁磁双层激活磁性光学特性
Activating magnetoelectric optical properties by twisting antiferromagnetic bilayers
论文作者
论文摘要
双层中的扭曲引入了两个对映异构体的结构手性,即左和右双层,具体取决于方向的扭曲角度。这种全球性手性与其他自由度之间的相互作用,例如磁性有序和由键的几何形状引起的局部八面体手性,可以产生惊人的现象。在这项工作中,我们专注于分线抗铁磁cri $ _3 $扭曲的同性恋者,其特征是每个单层中跨性的八面体性手性。使用对称分析,密度功能理论和紧密结合模型计算我们表明,层扭曲可以降低结构和磁点组的对称性,从而激活pyroelectricition和磁光kerr效应,否则在未扭转的抗fiferromagnetic同性恋者中会不存在。有趣的是,电偏振和KERR角度都可以通过扭曲角度控制,并且在从左倾斜的双层切换时,它们的符号会逆转。我们进一步揭示了具有旋转质地的非常规涡流的发生,这些旋转质地在动量空间中交替出现相反的手势。这些发现表明,磁性双层中的扭曲和八面体手性之间的相互作用与相关的范德华异质结构代表了一种非凡资源,用于定制其物理特性,以用于旋转和光电应用。
Twisting in bilayers introduces structural chirality with two enantiomers, i.e., left- and right-hand bilayers, depending on the oriented twist angle. The interplay between this global chirality and additional degrees of freedom, such as magnetic ordering and the local octahedral chirality arising from the geometry of the bonds, can yield striking phenomena. In this work, we focus on collinear antiferromagnetic CrI$_3$ twisted homo-bilayers, which are characterized by a staggered octahedral chirality in each monolayer. Using symmetry analysis, density functional theory and tight-binding model calculations we show that layers twisting can lower the structural and magnetic point-group symmetries, thus activating pyroelectricity and the magneto-optical Kerr effect, which would otherwise be absent in untwisted antiferromagnetic homo-bilayers. Interestingly, both electric polarization and Kerr angle are controllable by the twist angle and their sign is reversed when switching from left- to right-twisted bilayers. We further unveil the occurrence of unconventional vortices with spin textures that alternate opposite chiralities in momentum space. These findings demonstrate that the interplay between twisting and octahedral chirality in magnetic bilayers and related van der Waals heterostructures represents an extraordinary resource for tailoring their physical properties for spintronic and optoelectronic applications.